A Boundary Layer Forced Transition Method for Low Pressure Turbine Based on Macroscopic Pore Structure
A pore structure, low pressure turbine technology, which is applied to the supporting elements of blades, machines/engines, mechanical equipment, etc., can solve problems such as shortening the service life of the engine, failure of composite materials, and decline in the mechanical properties of the hole edge, so as to reduce aerodynamic losses. , The effect of good fatigue resistance and strong structural designability
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[0030] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present invention clearer and clearer, the present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments.
[0031] see Figure 1-8 , the low-pressure turbine boundary layer transition method in advance based on the macroscopic pore structure described in this embodiment, the steps include:
[0032] 1) Selection of prefabricated body parameters
[0033] The braiding angle of the braided prefabricated body is 25°-45°, the average fiber diameter is 9-15 μm, and the fiber volume fraction is 30%-45%. Superalloy materials require cooling system limitations, and thermal expansion coefficient matching can be considered for corresponding size adjustments. Considering comprehensively, the length of the airfoil of the low-pressure turbine blade 2 is designed to increase by 0.3% to 0.6% compared with the airfoil of the...
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